Potential for life to exist and be detected on Earth-like planets orbiting white dwarfs

Fuente: arXiv
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Main Authors: Whyte, Caldon T., Quiroga-Nuñez, L. H., Lingam, Manasvi, Pinilla, Paola
Format: Preprint
Published: 2024
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author Whyte, Caldon T.
Quiroga-Nuñez, L. H.
Lingam, Manasvi
Pinilla, Paola
author_facet Whyte, Caldon T.
Quiroga-Nuñez, L. H.
Lingam, Manasvi
Pinilla, Paola
contents With recent observations confirming exoplanets orbiting white dwarfs, there is growing interest in exploring and quantifying the habitability of temperate rocky planets around white dwarfs. In this work, the limits of the habitable zone of an Earth-like planet around a white dwarf are computed based on the incident stellar flux, and these limits are utilized to assess the duration of habitability at a given orbital distance. For a typical $0.6 M_\odot$ white dwarf an Earth-like planet at $\sim 0.012$ AU could remain in the temporally evolving habitable zone, maintaining conditions to support life, for nearly 7 Gyr. In addition, additional constraints on habitability are studied for the first time by imposing the requirement of receiving sufficient photon fluxes for UV-mediated prebiotic chemistry and photosynthesis. We demonstrate that these thresholds are comfortably exceeded by planets in the habitable zone. The prospects for detecting atmospheric biosignatures are also evaluated, and shown to require integration times on the order of one hour or less for ongoing space observations with JWST.
format Preprint
id arxiv_https___arxiv_org_abs_2411_18934
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Potential for life to exist and be detected on Earth-like planets orbiting white dwarfs
Whyte, Caldon T.
Quiroga-Nuñez, L. H.
Lingam, Manasvi
Pinilla, Paola
Earth and Planetary Astrophysics
Solar and Stellar Astrophysics
With recent observations confirming exoplanets orbiting white dwarfs, there is growing interest in exploring and quantifying the habitability of temperate rocky planets around white dwarfs. In this work, the limits of the habitable zone of an Earth-like planet around a white dwarf are computed based on the incident stellar flux, and these limits are utilized to assess the duration of habitability at a given orbital distance. For a typical $0.6 M_\odot$ white dwarf an Earth-like planet at $\sim 0.012$ AU could remain in the temporally evolving habitable zone, maintaining conditions to support life, for nearly 7 Gyr. In addition, additional constraints on habitability are studied for the first time by imposing the requirement of receiving sufficient photon fluxes for UV-mediated prebiotic chemistry and photosynthesis. We demonstrate that these thresholds are comfortably exceeded by planets in the habitable zone. The prospects for detecting atmospheric biosignatures are also evaluated, and shown to require integration times on the order of one hour or less for ongoing space observations with JWST.
title Potential for life to exist and be detected on Earth-like planets orbiting white dwarfs
topic Earth and Planetary Astrophysics
Solar and Stellar Astrophysics
url https://arxiv.org/abs/2411.18934